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  1. Of men, molecules, and (Ir)reducibility.G. Rickey Welch - 1989 - Bioessays 11 (6):187-190.
    The subject of (ir)reducibility in biochemistry has resurfaced recently in the literature. Along with it comes a renewed emphasis on the organizational complexity of the living state and, more broadly, concern over the unity of the sciences.
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  • Panpsychic Organicism: Sewall Wright’s Philosophy for Understanding Complex Genetic Systems. [REVIEW]David M. Steffes - 2007 - Journal of the History of Biology 40 (2):327 - 361.
    Sewall Wright first encountered the complex systems characteristic of gene combinations while a graduate student at Harvard's Bussey Institute from 1912 to 1915. In Mendelian breeding experiments, Wright observed a hierarchical dependence of the organism's phenotype on dynamic networks of genetic interaction and organization. An animal's physical traits, and thus its autonomy from surrounding environmental constraints, depended greatly on how genes behaved in certain combinations. Wright recognized that while genes are the material determinants of the animal phenotype, operating with great (...)
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  • Panpsychic Organicism: Sewall Wright’s Philosophy for Understanding Complex Genetic Systems.David M. Steffes - 2007 - Journal of the History of Biology 40 (2):327-361.
    Sewall Wright first encountered the complex systems characteristic of gene combinations while a graduate student at Harvard's Bussey Institute from 1912 to 1915. In Mendelian breeding experiments, Wright observed a hierarchical dependence of the organism's phenotype on dynamic networks of genetic interaction and organization. An animal's physical traits, and thus its autonomy from surrounding environmental constraints, depended greatly on how genes behaved in certain combinations. Wright recognized that while genes are the material determinants of the animal phenotype, operating with great (...)
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  • Autonomy in evolution: from minimal to complex life.Kepa Ruiz-Mirazo & Alvaro Moreno - 2012 - Synthese 185 (1):21-52.
    Our aim in the present paper is to approach the nature of life from the perspective of autonomy, showing that this perspective can be helpful for overcoming the traditional Cartesian gap between the physical and cognitive domains. We first argue that, although the phenomenon of life manifests itself as highly complex and multidimensional, requiring various levels of description, individual organisms constitute the core of this multifarious phenomenology. Thereafter, our discussion focuses on the nature of the organization of individual living entities, (...)
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  • Invisible Architectures.Hans-Jörg Rheinberger - 2000 - Science in Context 13 (1):121-136.
    The ArgumentIn this essay I will sketch a few instances of how, and a few forms in which, the “invisible” became an epistemic category in the development of the life sciences from the seventeenth century through the end of the nineteenth century. In contrast to most of the other papers in this issue, I do not so much focus on the visualization of various little entities, and the tools and contexts in which a visual representation of these things was realized. (...)
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  • The Ethics of Hybrid Subjects: Feminist Constructivism According to Donna Haraway.Baukje Prins - 1995 - Science, Technology and Human Values 20 (3):352-367.
    This article discusses the viability of a feminist constructivist approach of knowledge through the careful reading of the work of the feminist scholar and historian of science and technology, Donna Haraway. Haraway proposes an interpretation of objectivity in terms of "situated knowledges. " Both the subject and the object of knowledge are endowed with the status of material-semiotic actors. By blurring the epistemological boundary between subject and object, Haraway's narratives about scientific discourse become populated with hybrid subjects/objects. The author argues (...)
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  • Rethinking Woodger’s Legacy in the Philosophy of Biology.Daniel J. Nicholson & Richard Gawne - 2014 - Journal of the History of Biology 47 (2):243-292.
    The writings of Joseph Henry Woodger (1894–1981) are often taken to exemplify everything that was wrongheaded, misguided, and just plain wrong with early twentieth-century philosophy of biology. Over the years, commentators have said of Woodger: (a) that he was a fervent logical empiricist who tried to impose the explanatory gold standards of physics onto biology, (b) that his philosophical work was completely disconnected from biological science, (c) that he possessed no scientific or philosophical credentials, and (d) that his work was (...)
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  • Neither Logical Empiricism nor Vitalism, but Organicism: What the Philosophy of Biology Was.Daniel J. Nicholson & Richard Gawne - 2015 - History and Philosophy of the Life Sciences 37 (4):345-381.
    Philosophy of biology is often said to have emerged in the last third of the twentieth century. Prior to this time, it has been alleged that the only authors who engaged philosophically with the life sciences were either logical empiricists who sought to impose the explanatory ideals of the physical sciences onto biology, or vitalists who invoked mystical agencies in an attempt to ward off the threat of physicochemical reduction. These schools paid little attention to actual biological science, and as (...)
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  • Regenerative Medicine in Historical Context.Jane Maienschein - 2009 - Medicine Studies 1 (1):33-40.
    The phrase “regenerative medicine” is used so often and for so many different things, with such enthusiasm or worry, and often with a sense that this is something radically new. This paper places studies of regeneration and applications in regenerative medicine into historical perspective. In fact, the first stem cell experiment was carried out in 1907, and many important lines of research have contributed since. This paper explores both what we can learn about the history and what we can learn (...)
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  • “Organization” as Setting Boundaries of Individual Development.Jane Maienschein - 2011 - Biological Theory 6 (1):73-79.
    Abstract“Development” suggests that there is something that is developing, or changing over time. We can ask about temporal boundaries of that developmental process, asking when development begins or ends and whether it has defined stages along the way, for example. We can ask about spatial boundaries as well: where does the developing object start and end? For this article, I ask about the boundary definition of the developing organism in particular. What is an individual organism, and what defines it as (...)
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  • Controlling Life: From Jacques Loeb to Regenerative Medicine. [REVIEW]Jane Maienschein - 2009 - Journal of the History of Biology 42 (2):215 - 230.
    In his 1987 book "Controlling Life: Jacques Loeb and the Engineering Ideal in Biology", Philip Pauly presented his readers with the biologist Jacques Loeb and his role in developing an emphasis on control of life processes. Loeb's work on artificial parthenogenesis, for example, provided an example of bioengineering at work. This paper revisits Pauly's study of Loeb and explores the way current research in regenerative medicine reflects the same tradition. A history of regeneration research reveals patterns of thinking and research (...)
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  • The Organism is dead. Long live the organism!Manfred D. Laubichler - 2000 - Perspectives on Science 8 (3):286-315.
  • Metaphors as models: Towards a typology of metaphor in ancient science.Marcel Humar - 2021 - History and Philosophy of the Life Sciences 43 (3):1-26.
    Metaphors play a crucial role in the understanding of science. Since antiquity, metaphors have been used in technical texts to describe structures unknown or unnamed; besides establishing a terminology of science, metaphors are also important for the expression of concepts. However, a concise terminology to classify metaphors in the language of science has not been established yet. But in the context of studying the history of a science and its concepts, a precise typology of metaphors can be helpful. Metaphors have (...)
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  • Representation of living forms.Leo Hellerman - 2006 - Biology and Philosophy 21 (4):537-552.
    The living forms represented in this paper are sets of parts that spontaneously increase in organization. Their organizations are measured by an information-theoretic function derived from the work of Boltzmann and Shannon. We briefly review its derivation in the context of the troubled role of mathematics in biology, and then define the function. We illustrate its nature by measuring the 22 different organizations of a set of eight things; and we facilitate its use by defining the parameters that determine an (...)
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  • Unlocking the Black box between genotype and phenotype: Cell condensations as morphogenetic (modular) units. [REVIEW]Brian K. Hall - 2003 - Biology and Philosophy 18 (2):219-247.
    Embryonic development and ontogeny occupy whatis often depicted as the black box betweengenes – the genotype – and the features(structures, functions, behaviors) of organisms– the phenotype; the phenotype is not merelya one-to-one readout of the genotype. Thegenes home, context, and locus of operation isthe cell. Initially, in ontogeny, that cell isthe single-celled zygote. As developmentensues, multicellular assemblages of like cells(modules) progressively organized as germlayers, embryonic fields, anlage,condensations, or blastemata, enable genes toplay their roles in development and evolution.As modules, condensations are (...)
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  • Epigenetic landscaping: Waddington's use of cell fate bifurcation diagrams. [REVIEW]Scott F. Gilbert - 1991 - Biology and Philosophy 6 (2):135-154.
    From the 1930s through the 1970s, C. H. Waddington attempted to reunite genetics, embryology, and evolution. One of the means to effect this synthesis was his model of the epigenetic landscape. This image originally recast genetic data in terms of embryological diagrams and was used to show the identity of genes and inducers and to suggest the similarities between embryological and genetic approaches to development. Later, the image became more complex and integrated gene activity and mutations. These revised epigenetic landscapes (...)
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  • Clinical evaluation: constructing a new model for post‐normal medicine.Kieran Sweeney Ma Mphil Frcgp & David Kernick Md Mrcgp - 2002 - Journal of Evaluation in Clinical Practice 8 (2):131-138.
  • Agnes Arber: Form in the mind and the eye.Maura C. Flannery - 2003 - International Studies in the Philosophy of Science 17 (3):281 – 300.
    Agnes Arber (1879-1960) was a British botanist who was a leading plant morphologist during the first half of the 20th century. She also wrote on the history and philosophy of botany. I argue in this article that her philosophical work on form and on how the work of the mind and the eye relate to each other in morphological research are relevant to the science of today. Arber's unusual blend of interests - in botany, history, philosophy, and art - put (...)
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  • A non-metaphysical evaluation of vitalism in the early twentieth century.Bohang Chen - 2018 - History and Philosophy of the Life Sciences 40 (3):50.
    In biology the term “vitalism” is usually associated with Hans Driesch’s doctrine of the entelechy: entelechies were nonmaterial, bio-specific agents responsible for governing a few peculiar biological phenomena. Since vitalism defined as such violates metaphysical materialism, the received view refutes the doctrine of the entelechy as a metaphysical heresy. But in the early twentieth century, a different, non-metaphysical evaluation of vitalism was endorsed by some biologists and philosophers, which finally led to a logical refutation of the doctrine of the entelechy. (...)
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  • Conceptual heterogeneity and the legacy of organicism: thoughts on the life organic: Essay review of Erik Peterson, The life organic: the theoretical biology club and the roots of epigenetics, Pittsburgh: University of Pittsburgh Press, 2016, 328 pp., $45.00.Daniel S. Brooks - 2019 - History and Philosophy of the Life Sciences 41 (2):24.
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  • Mendelism, Plant Breeding and Experimental Cultures: Agriculture and the Development of Genetics in France. [REVIEW]Christophe Bonneuil - 2006 - Journal of the History of Biology 39 (2):281 - 308.
    The article reevaluates the reception of Mendelism in France, and more generally considers the complex relationship between Mendelism and plant breeding in the first half on the 20th century. It shows on the one side that agricultural research and higher education institutions have played a key role in the development and institutionalization of genetics in France, whereas university biologists remained reluctant to accept this approach on heredity. But on the other side, plant breeders, and agricultural researchers, despite an interest in (...)
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  • Between Biochemists and Embryologists - The Biochemical Study of Embryonic Induction in the 1930s.Rony Armon - 2012 - Journal of the History of Biology 45 (1):65 - 108.
    The discovery by Hans Spemann of the “organizer” tissue and its ability to induce the formation of the amphibian embryo's neural tube inspired leading embryologists to attempt to elucidate embryonic inductions’ underlying mechanism. Joseph Needham, who during the 1930s conducted research in biochemical embryology, proposed that embryonic induction is mediated by a specific chemical entity embedded in the inducing tissue, surmising that chemical to be a hormone of sterol-like structure. Along with embryologist Conrad H. Waddington, they conducted research aimed at (...)
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  • Between Biochemists and Embryologists – The Biochemical Study of Embryonic Induction in the 1930s.Rony Armon - 2012 - Journal of the History of Biology 45 (1):65-108.
    The discovery by Hans Spemann of the “organizer” tissue and its ability to induce the formation of the amphibian embryo’s neural tube inspired leading embryologists to attempt to elucidate embryonic inductions’ underlying mechanism. Joseph Needham, who during the 1930s conducted research in biochemical embryology, proposed that embryonic induction is mediated by a specific chemical entity embedded in the inducing tissue, surmising that chemical to be a hormone of sterol-like structure. Along with embryologist Conrad H. Waddington, they conducted research aimed at (...)
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  • Philosophy of Cell Biology.William Bechtel & Andrew Bollhagen - 2019 - Stanford Encyclopedia of Philosophy.
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  • Book Reviews: Volume 24, Number 1.Neal Grossman, David Schaffer Hafiz, Etzel Cardena, Carlos S. Alvarado, Jim B. Tucker, Michael Levin & Stan V. McDaniel - 2010 - Journal of Scientific Exploration 24 (1).
    The End of Materialism: How Evidence of the Paranormal Is Bringing Science and Spirit Together by Charles T. Tart. Philosophy of Personal Identity and Multiple Personality by Logi Gunnarsson. Eusapia Palladino and Her Phenomena by Hereward Carrington. Can the Mind Survive beyond Death? In Pursuit of Scientific Evidence by Satwant K. Pasricha. Morphic Resonance: The Nature of Formative Causation by Rupert Sheldrake. A New Science of Life: The Hypothesis of Formative Causation by Rupert Sheldrake. “Why AI Is a Dangerous Dream,” (...)
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